beautypg.com

Ac switching characteristics – Cypress CY7C1034DV33 User Manual

Page 4

background image

CY7C1034DV33

Document Number: 001-08351 Rev. *C

Page 4 of 9

Figure 2. AC Test Loads and Waveform

[4]

AC Switching Characteristics

Over the operating range

[5]

Parameter

Description

–10

Unit

Min

Max

Read Cycle
t

power

[6]

V

CC

(Typical) to the First Access

100

μs

t

RC

Read Cycle Time

10

ns

t

AA

Address to Data Valid

10

ns

t

OHA

Data Hold from Address Change

3

ns

t

ACE

CE

Active LOW to Data Valid

[3]

10

ns

t

DOE

OE LOW to Data Valid

5

ns

t

LZOE

OE LOW to Low Z

[7]

1

ns

t

HZOE

OE HIGH to High Z

[7]

5

ns

t

LZCE

CE

Active LOW to Low Z

[3, 7]

3

ns

t

HZCE

CE Deselect

HIGH to High Z

[3, 7]

5

ns

t

PU

CE

Active LOW to Power Up

[3, 8]

0

ns

t

PD

CE Deselect

HIGH to Power Down

[3, 8]

10

ns

90%

10%

3.0V

GND

90%

10%

All input pulses

3.3V

OUTPUT

5 pF*

(a)

(b)

R1 317

Ω

R2

351

Ω

Fall Time:> 1V/ns

(c)

OUTPUT

50

Ω

Z0= 50Ω

V

TH

= 1.5V

30 pF*

*Capacitive Load consists of all
components of the test environment

Rise Time > 1V/ns

*Including jig
and scope

Notes

4. Valid SRAM operation does not occur until the power supplies reach the minimum operating V

DD

(3.0V). 100

μs (t

power

) after reaching the minimum operating V

DD

,

normal SRAM operation begins including reduction in V

DD

to the data retention (V

CCDR

, 2.0V) voltage.

5. Test conditions assume signal transition time of 3 ns or less, timing reference levels of 1.5V, and input pulse levels of 0 to 3.0V. Test conditions for the read cycle use

output loading as shown in part a) of the

AC Test Loads and Waveform

[4]

, unless specified otherwise.

6. t

POWER

gives the minimum amount of time that the power supply is at typical V

CC

values until the first memory access is performed.

7. t

HZOE

, t

HZCE

, t

HZWE

, t

LZOE

, t

LZCE

, and t

LZWE

are specified with a load capacitance of 5 pF as in part (b) of AC Test Loads. Transition is measured

±200 mV from steady

state voltage.

8. These parameters are guaranteed by design and are not tested.

[+] Feedback